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壳聚糖作为崩解剂对呋塞米片生物利用度的影响:新型制剂的体外评价与体内模拟

Impact of chitosan as a disintegrant on the bioavailability of furosemide tablets: in vitro evaluation and in vivo simulation of novel formulations.

作者信息

Rasool Bazigha Kadhim Abdul, Fahmy Sahar Abdelsattar, Galeel Omar Waleed Abdul

机构信息

Department of Pharmaceutics and Pharmacy Practice, Dubai Pharmacy College, Dubai, UAE.

出版信息

Pak J Pharm Sci. 2012 Oct;25(4):815-22.

Abstract

To determine the effect of chitosan, starch powder, polyvinylpyrrolidone (PVP), Avicel PH 101 powder, Avicel PH 102 granules as a function of different concentrations on the solubility, disintegration and hence dissolution of furosemide from immediate release tablet dosage forms. The tablets were prepared by the wet granulation method and evaluated for hardness, friability, disintegration and in vitro dissolution. Chitosan 7% w/w showed the fastest disintegration of furosemide tablets among the other disintegrants studied. This was attributed to its highest swelling properties and velocity constant of water uptake. The step of adding chitosan during tablet preparation had a great effect on the physical properties and dissolution profiles of the prepared tablets with external addition of chitosan showed best results compared to best results comparing to internal-external or internal addition. The most appropriate force of compression was 4ton/cm(2). The selected formula F15 containing 7% w/w chitosan was successful and showed a high significant (p<0.001) enhancement in disintegration and dissolution behaviors of furosemide tablets in comparison with the commercially available Furosemide ® tablets. These results were supported by the simulated data where F15 formula showed the highest plasma concentration C-max 1.89mcg/mL after 0.5 hr compared to C-max 1.05mcg/mL after 1hr for the reference. The present study demonstrated that chitosan is a very good candidate to be used as a tablet disintegrant and was able to enhance the dissolution of poorly absorbable drugs.

摘要

为确定壳聚糖、淀粉粉末、聚乙烯吡咯烷酮(PVP)、微晶纤维素PH 101粉末、微晶纤维素PH 102颗粒在不同浓度下对速尿速释片剂剂型的溶解度、崩解度及由此产生的溶出度的影响。通过湿法制粒法制备片剂,并对其硬度、脆碎度、崩解度和体外溶出度进行评估。在研究的其他崩解剂中,7% w/w的壳聚糖使速尿片剂的崩解速度最快。这归因于其最高的溶胀性能和吸水速度常数。在片剂制备过程中添加壳聚糖的步骤对所制备片剂的物理性质和溶出曲线有很大影响,与内外加或内加壳聚糖相比,外加壳聚糖显示出最佳结果。最合适的压片力为4吨/平方厘米。所选的含7% w/w壳聚糖的F15配方成功,与市售速尿®片剂相比,速尿片剂的崩解和溶出行为有极显著(p<0.001)增强。模拟数据支持了这些结果,其中F15配方在0.5小时后显示出最高血浆浓度C-max为1.89微克/毫升,而参比制剂在1小时后C-max为1.05微克/毫升。本研究表明,壳聚糖是用作片剂崩解剂的非常好的选择,并且能够增强难吸收药物的溶出度。

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